R. Moletta, La méthanisation (3° Éd.), 2015.

U. Marchaim, Biogas processes for sustainable development, Food & Agriculture Org, 1992.

, Anaerobic biotechnology for bioenergy production: principles and applications, 2008.

H. N. Chanakya and R. Moletta, Technologies émergeantes de biométhanisation de la biomasse végétale en Inde, 2005.

L. Chen, L. Zhao, C. Ren, and F. Wang, The progress and prospects of rural biogas production in China, Energy Policy, vol.51, pp.58-63, 2012.

R. Moletta, Le biogaz « à la ferme, 2003.

L. De-baere and B. Mattheeuws, Anaerobic Digestion of the Organic Fraction of Municipal Solid Waste, pp.518-543, 2008.

S. Berger and C. Couturier, La Méthanisation En Milieu Rural. Méthanisation 2e Ed, p.552, 2011.

K. Hjort-gregersen, H. B. Moller, S. G. Sommer, T. Birkmose, and L. H. Nielsen, Probiogas : Promotion of Biogas for Electricity and Heat Production in EU countries. Economic and Environmental Benefits of Biogas from Centralised co-digestion, 2007.

, Cours des Comptes. L'usine de traitement des déchets Amétyst de Montpellier : un pari sur un processus industriel complexe. Cours des Comptes, 2017.

. Atee-club-biogaz, . Communaute, C. Lille-metropole, . De, and . Organique, , 2011.

. E. Eptisa, . Management, . Health, . Energy, and . Unit, , 2009.

. Sinoe, Carte des unités de méthanisation et de biogaz n, 2016.

J. Baudez, R. Bendoula, and P. Peu, Quels besoins de recherche dans le domaine de la digestion anaérobie des boues résiduaires ? ONEMA, 2014.

A. Hilkiah-igoni, M. J. Ayotamuno, C. L. Eze, S. Ogaji, and S. D. Probert, Designs of anaerobic digesters for producing biogas from municipal solid-waste, Appl Energy, vol.85, pp.430-438, 2008.

L. De-baere, Will anaerobic digestion of solid waste survive in the future?, Water Sci Technol J Int Assoc Water Pollut Res, vol.53, pp.187-94, 2006.

, Commissariat Général Au Développement Durable. Objectifs énergétiques Europe 2020 : la France doit poursuivre ses efforts pour les énergies renouvelables, 2014.

. Ademe, Visions Energie Climat, 2014.

, Circulaire du 10 janvier 2012, 2012.

M. Boëdec, Nature en ville : 81 projets d'aménagements exemplaires --Environnementmagazine.fr, Environ Mag, 2016.

, -992 du 17 août 2015 relative à la transition énergétique pour la croissance verte, 2015.

D. Bomstein, Tout savoir sur les financements européens pour l'environnement --Environnement-magazine.fr, Environ Mag, 2016.

L. Radisson, Biogaz : une ordonnance pour booster les 300 projets d'injection en attente, ActuEnviron, vol.12, 2016.

A. Canto, Paris vise 50 % de recyclage -Déchets & Recyclage -Environnement-magazine.fr

E. Mag, , 2016.

D. Laperche, Paris prépare le tri à la source des biodéchets, Actu-Environ, 2016.

R. Boughriet, La collecte des déchets à la croisée des chemins, 2016.

B. Métropole, Rapport Annuel dechets, 2014.

M. Boëdec, Innovation urbaine : cinq nouveaux démonstrateurs émergent --Environnementmagazine.fr, Environ Mag, 2016.

T. Yigitcanlar and F. Dur, Developing a Sustainability Assessment Model: The Sustainable Infrastructure, Land-Use, Environment and Transport Model, Sustainability, vol.2, pp.321-361, 2010.

J. Jacobs, The Death and Life of Great American Cities, 1992.

J. Jacobs, Cities and the Wealth of Nations, 1985.

J. Jacobs, The Economy of Cities. First Pr. edition. Vintage, 1970.

L. Scarlett, Introduction: Cities and Sustainability. Sustain. Dev. Law Policy, 2011.

. Freiburg and . Greencity, Approaches to substainability, 2016.

Y. R. Jabareen, Sustainable Urban Forms: Their Typologies, Models, and Concepts, J Plan Educ Res, vol.26, pp.38-52, 2006.
DOI : 10.1177/0739456x05285119

C. Esnouf, R. M. Bricas, and N. Dualine, Rapport Complet, 2011.

M. Hough, Cities and Natural Process: A Basis for Sustainability. Routledge, 2004.

P. G. Berg and G. Nycander, Sustainable neighbourhoods : a qualitative model for resource management in communities, 1997.

H. Fraker, Why Urban Sustainability at Neighborhood Scales, 2013.

A. Huang and K. Soubotin, Hammarby Sjostad : A Case Study, p.82, 2007.

, Malmö: Bo01, City of Tomorrow: European Building Exhibition and sustainable n, 2016.

B. Persson and A. , The Western Harbour: experiences and lessons learned from Malmö, 2013.

S. Wulf, P. Jäger, and H. Döhler, Balancing of greenhouse gas emissions and economic efficiency for biogas-production through anaerobic co-fermentation of slurry with organic waste, Agric Ecosyst Environ, vol.112, pp.178-85, 2006.

S. Kampelmann, Mesurer l'économie circulaire à l'échelle territoriale, Rev OFCE, vol.2016, pp.161-84
DOI : 10.3917/reof.145.0161

S. Pan, M. A. Du, I. Huang, I. Liu, C. Chiang et al., Strategies on implementation of waste-to-energy (WTE) supply chain for circular economy system: a review, J Clean Prod, vol.108, pp.409-430, 2015.

. Franceagrimer, . Valorisation, . Verts, and . France, , 2015.

A. , La composition des ordures ménagères et assimilées en France [campagne nationale de caractérisation, Angers: ADEME, 2007.

. Ademe, Guide technique : La gestion des déchets verts, 2001.

L. Ventour, The food we waste. Banbury: WRAP, 2008.

Y. Eklind and H. Kirchmann, Composting and storage of organic household waste with different litter amendments. I: carbon turnover, Bioresour Technol, vol.74, pp.115-124, 2000.

A. Déchets and A. , ADEME EDITION, 2015.

A. Estimation, . Gisements, . De, . Utilisables, and . Methanisation, , 2013.

T. Thamsiriroj and J. D. Murphy, Modelling mono-digestion of grass silage in a 2-stage CSTR anaerobic digester using ADM1, Bioresour Technol, vol.102, pp.948-59, 2011.

R. Zhang, H. M. El-mashad, K. Hartman, F. Wang, J. Rapport et al., Characterization of Food and Green Wastes As Feedstock for Anaerobic Digesters, 2005.

J. M. Triolo, L. Pedersen, H. Qu, and S. G. Sommer, Biochemical methane potential and anaerobic biodegradability of non-herbaceous and herbaceous phytomass in biogas production, Bioresour Technol, vol.125, pp.226-258, 2012.

S. Hertel, P. Navarro, and I. Körner, Biogas and nutrients from blackwater, lawn cuttings and grease trap residues-experiments for Hamburg's Jenfelder Au district, 2015.

P. V. Rao, S. S. Baral, R. Dey, and S. Mutnuri, Biogas generation potential by anaerobic digestion for sustainable energy development in India, Renew Sustain Energy Rev, vol.14, pp.2086-94, 2010.

A. Bernstad, Household food waste management-Evaluations of current status and potential improvements using life-cycle assessment methodology, 2012.

M. Kayhanian, Biodegradability of the organic fraction of municipal solid waste in a high-solids anaerobic digester, Waste Manag Res, vol.13, pp.123-136, 1995.

A. Biodéchets, , 2013.

R. Campuzano and S. González-martínez, Characteristics of the organic fraction of municipal solid waste and methane production: A review, Waste Manag, vol.54, pp.3-12, 2016.

H. Fisgativa, A. Tremier, and P. Dabert, Characterizing the variability of food waste quality: A need for efficient valorisation through anaerobic digestion, Waste Manag, vol.50, pp.264-74, 2016.

L. Zhang, Y. Lee, and D. Jahng, Anaerobic co-digestion of food waste and piggery wastewater: Focusing on the role of trace elements, Bioresour Technol, vol.102, pp.5048-59, 2011.

R. Zhang, H. Elmashad, K. Hartman, F. Wang, G. Liu et al., Characterization of food waste as feedstock for anaerobic digestion, Bioresour Technol, vol.98, pp.929-964, 2007.

J. K. Cho, C. P. Soon, . Biochemical, . State, . Digestio et al., , pp.245-53, 1995.

V. N. Gunaseelan, Biochemical methane potential of fruits and vegetable solid waste feedstocks, Biomass Bioenergy, vol.26, pp.389-99, 2004.

H. Hartmann, Phthalic acid esters found in municipal organic waste, Water Sci Technol, vol.48, pp.175-83, 2003.

H. Hartmann and B. K. Ahring, Anaerobic digestion of the organic fraction of municipal solid waste: Influence of co-digestion with manure, Water Res, vol.39, pp.1543-52, 2005.

L. Levén, A. Eriksson, and A. Schnürer, Effect of process temperature on bacterial and archaeal communities in two methanogenic bioreactors treating organic household waste: Temperature effects on microbial communities in bioreactors, FEMS Microbiol Ecol, vol.59, pp.683-93, 2007.

C. Gallert and J. Winter, Mesophilic and thermophilic anaerobic digestion of source-sorted organic wastes: effect of ammonia on glucose degradation and methane production, Appl Microbiol Biotechnol, vol.48, pp.405-415, 1997.

G. D. Gioannis, A. Muntoni, A. Polettini, R. Pomi, and D. Spiga, Energy recovery from one-and twostage anaerobic digestion of food waste, Waste Manag, vol.68, pp.595-602, 2017.

X. Gómez, M. J. Cuetos, C. J. Morán, A. García, and A. I. , Anaerobic co-digestion of primary sludge and the fruit and vegetable fraction of the municipal solid wastes, Renew Energy, vol.31, pp.2017-2041, 2006.

K. Izumi, Y. Okishio, N. Nagao, C. Niwa, S. Yamamoto et al., Effects of particle size on anaerobic digestion of food waste, Int Biodeterior Biodegrad, vol.64, pp.601-609, 2010.

K. Zeshan, . Obulip, and C. Visvanathan, Effect of C/N ratio and ammonia-N accumulation in a pilot-scale thermophilic dry anaerobic digester, Bioresour Technol, vol.113, pp.294-302, 2012.

, Agence de l'Eau Seine Normandie -Les cycles de l'eau -Les eaux usées n, April, vol.12, 2016.

N. Nelson, . Sustainable, and . Implant, , 2010.

E. Eriksson, K. Auffarth, M. Henze, and A. Ledin, Characteristics of grey wastewater, Urban Water, vol.4, pp.85-104, 2002.

Ö. Alp, Further treatment of digested blackwater for extraction of valuable components. Hamburg: Ges. zur Förderung und Entwicklung der Umwelttechnologien an der Techn, 2010.

K. Katarzyna, . Anaerobic, . Of-concentrated-wastewater-in-desar, and . Concepts, , 2005.

C. Wendland, Hamburg: Ges. zur Förderung und Entwicklung der Umwelttechnologien an der Technischen Univ, 2008.

M. S. De-graaff, H. Temmink, G. Zeeman, and C. Buisman, Anaerobic Treatment of Concentrated Black Water in a UASB Reactor at a Short HRT, Water, vol.2, pp.101-120, 2010.

E. Metcalf, . Inc, G. Tchobanoglous, F. Burton, and H. D. Stensel, Wastewater Engineering : Treatment and Reuse, 2003.

Y. Miron, G. Zeeman, J. B. Van-lier, and G. Lettinga, The role of sludge retention time in the hydrolysis and acidification of lipids, carbohydrates and proteins during digestion of primary sludge in CSTR systems, Water Res, vol.34, pp.1705-1718, 2000.

H. J. Roman, J. E. Burgess, and B. I. Pletschke, Enzyme treatment to decrease solids and improve digestion of primary sewage sludge, vol.5, pp.963-970, 2006.

S. Inoue, S. Sawayama, T. Ogi, and S. Yokoyama, Organic composition of liquidized sewage sludge, Biomass Bioenergy, vol.10, pp.37-40, 1996.

H. N. Gavala, U. Yenal, I. V. Skiadas, P. Westermann, and B. K. Ahring, Mesophilic and thermophilic anaerobic digestion of primary and secondary sludge, Water Res, vol.37, pp.4561-72, 2003.

T. Sénat, La qualité de l'eau et l'assainissement en France (rapport) n, April, vol.12, 2016.

, Revue des filières de traitement/valorisation des boues, RECORD, 2007.

P. Camacho and C. Prévot, Méthanisation des boues. Méthanisation 2e Ed, p.552, 2011.

Y. Song, S. Kwon, and J. Woo, Mesophilic and thermophilic temperature co-phase anaerobic digestion compared with single-stage mesophilic-and thermophilic digestion of sewage sludge, Water Res, vol.38, pp.1653-62, 2004.

J. Wu, J. B. Zhang, Y. Jiang, Z. P. Cao, S. Poncin et al., Impacts of hydrodynamic conditions on sludge digestion in internal circulation anaerobic digester, Process Biochem, vol.47, pp.1627-1659, 2012.
URL : https://hal.archives-ouvertes.fr/hal-02050042

M. Dohányos, J. Zábranská, and P. Jenícek, Enhancement of sludge anaerobic digestion by using of a special thickening centrifuge, Water Sci Technol, vol.36, pp.145-153, 1997.

I. W. Nah, Y. W. Kang, K. Hwang, and W. Song, Mechanical pretreatment of waste activated sludge for anaerobic digestion process, Water Res, vol.34, pp.2362-2368, 2000.

M. A. De-la-rubia, M. Perez, L. I. Romero, and D. Sales, Effect of solids retention time (SRT) on pilot scale anaerobic thermophilic sludge digestion, Process Biochem, vol.41, pp.79-86, 2006.

I. Lee, P. Parameswaran, and B. E. Rittmann, Effects of solids retention time on methanogenesis in anaerobic digestion of thickened mixed sludge, Bioresour Technol, vol.102, 2011.

E. Elbeshbishy, G. Nakhla, and H. Hafez, Biochemical methane potential (BMP) of food waste and primary sludge: Influence of inoculum pre-incubation and inoculum source, Bioresour Technol, vol.110, pp.18-25, 2012.

X. Gomez, M. J. Cuetos, C. J. Mor?n-a, ?. Garc, and . Ai, Anaerobic co-digestion of primary sludge and the fruit and vegetable fraction of the municipal solid wastes, Renew Energy, vol.31, pp.2017-2041, 2006.

V. N. Gunaseelan, . Anaerobic, . Of, . For, and . Production:-a-review, Biomass Bionenergy, vol.13, pp.83-114, 1997.

L. Yu, M. Bule, J. Ma, Q. Zhao, C. Frear et al., Enhancing volatile fatty acid (VFA) and biomethane production from lawn grass with pretreatment, Bioresour Technol, vol.162, pp.243-252, 2014.

G. Liu, R. Zhang, H. M. El-mashad, and R. Dong, Effect of feed to inoculum ratios on biogas yields of food and green wastes, Bioresour Technol, vol.100, pp.5103-5111, 2009.

S. Yan, J. Li, X. Chen, J. Wu, P. Wang et al., Enzymatical hydrolysis of food waste and ethanol production from the hydrolysate, Renew Energy, vol.36, pp.1259-65, 2011.

P. Buffiere, S. Frederic, B. Marty, and J. Delgenes, A comprehensive method for organic matter characterization in solid wastes in view of assessing their anaerobic biodegradability, Water Sci Technol, vol.58, p.1783, 2008.

K. Kujawa-roeleveld and G. Zeeman, Anaerobic Treatment in Decentralised and Source-SeparationBased Sanitation Concepts, Rev Environ Sci Biotechnol, vol.5, pp.115-154, 2006.

L. Appels, J. Baeyens, J. Degrève, and R. Dewil, Principles and potential of the anaerobic digestion of waste-activated sludge, Prog Energy Combust Sci, vol.34, pp.755-81, 2008.

E. Iacovidou, D. Ohandja, and N. Voulvoulis, Food waste co-digestion with sewage sludgeRealising its potential in the UK, J Environ Manage, vol.112, pp.267-74, 2012.

H. Siegrist, D. Renggli, and W. Gujer, Mathematical Modelling of Anaerobic Mesophilic Sewage Sludge Treatment, Water Sci Technol, vol.27, pp.25-36, 1993.

J. R. Baker, M. W. Milke, and J. R. Mihelcic, Relationship between chemical and theoretical oxygen demand for specific classes of organic chemicals, Water Res, vol.33, pp.327-361, 1999.

V. N. Gunaseelan, Regression models of ultimate methane yields of fruits and vegetable solid wastes, sorghum and napiergrass on chemical composition, Bioresour Technol, vol.98, pp.1270-1277, 2007.

M. Lesteur, V. Bellon-maurel, C. Gonzalez, E. Latrille, J. M. Roger et al., Alternative methods for determining anaerobic biodegradability: A review, Process Biochem, vol.45, pp.431-471, 2010.

F. Straka, P. Jenicek, J. Zabranska, M. Dohanyos, and M. Kuncarova, Anaerobic fermentation of biomass and wastes with respect to sulfur and nitrogen contents in treated materials, Proc. The11th Int. Waste Manag. Landfill Symp, 2007.

L. R. Maki, Experiments on the microbiology of cellulose decomposition in a municipal sewage plant, Antonie Van Leeuwenhoek, vol.20, pp.185-200, 1954.

T. Noike, G. Endo, J. Chang, J. Yaguchi, and J. Matsumoto, Characteristics of carbohydrate degradation and the rate-limiting step in anaerobic digestion, Biotechnol Bioeng, vol.27, pp.1482-1489, 1985.

H. Belitz, W. Grosch, and P. Schieberle, , 2009.

P. Elefsiniotis and W. K. Oldham, Substrate degradation patterns in acid-phase anaerobic digestion of municipal primary sludge, Environ Technol, vol.15, pp.741-51, 1994.

L. Dong, Y. Zhenhong, and S. Yongming, Semi-dry mesophilic anaerobic digestion of water sorted organic fraction of municipal solid waste (WS-OFMSW), Bioresour Technol, vol.101, pp.2722-2730, 2010.

M. A. Kaluzny, L. A. Duncan, M. V. Merritt, and D. E. Epps, Rapid separation of lipid classes in high yield and purity using bonded phase columns, J Lipid Res, vol.26, pp.135-140, 1985.

O. H. Lowry, N. J. Rosebrough, A. L. Farr, and R. J. Randall, Protein measurement with the Folin phenol reagent, J Biol Chem, vol.193, pp.265-275, 1951.

J. A. Chandler, W. J. Jewell, J. M. Gossett, P. J. Van-soest, and J. B. Robertson, Predicting methane fermentation biodegradability, Biotechnol Bioeng Symp, 1980.

D. P. Komilis and R. K. Ham, The effect of lignin and sugars to the aerobic decomposition of solid wastes, Waste Manag, vol.23, pp.419-442, 2003.

P. J. Van-soest, J. B. Robertson, B. A. Lewis, and . Others, Symposium: carbohydrate methodology, metabolism, and nutritional implications in dairy cattle, J Dairy Sci, vol.74, pp.3583-3597, 1991.

T. Carballo, M. V. Gil, X. Gómez, F. González-andrés, and A. Morán, Characterization of different compost extracts using Fourier-transform infrared spectroscopy (FTIR) and thermal analysis, Biodegradation, vol.19, pp.815-845, 2008.

M. J. Cuetos, A. Morán, M. Otero, and X. Gómez, Anaerobic co-digestion of poultry blood with OFMSW: FTIR and TG-DTG study of process stabilization, Environ Technol, vol.30, pp.571-82, 2009.

X. Chen, W. Yan, K. Sheng, and M. Sanati, Comparison of high-solids to liquid anaerobic co-digestion of food waste and green waste, Bioresour Technol, vol.154, pp.215-236, 2014.

P. Sosnowski, A. Wieczorek, and S. Ledakowicz, Anaerobic co-digestion of sewage sludge and organic fraction of municipal solid wastes, Adv Environ Res, vol.7, pp.609-616, 2003.

R. Rajagopal, J. W. Lim, Y. Mao, C. Chen, and J. Wang, Anaerobic co-digestion of source segregated brown water (feces-without-urine) and food waste: For Singapore context, Sci Total Environ, vol.443, pp.877-86, 2013.

Z. Siddiqui, N. J. Horan, and K. Anaman, Optimisation of C:N Ratio for Co-Digested Processed Industrial Food Waste and Sewage Sludge Using the BMP Test, Int J Chem React Eng, vol.9, 2011.

M. Elsayed, Y. Andres, W. Blel, A. Gad, and A. Ahmed, Effect of VS organic loads and buckwheat husk on methane production by anaerobic co-digestion of primary sludge and wheat straw, Energy Convers Manag, vol.117, pp.538-585, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01924282

S. Amir, A. Jouraiphy, A. Meddich, M. El-gharous, P. Winterton et al., Structural study of humic acids during composting of activated sludge-green waste: Elemental analysis, FTIR and 13C NMR, J Hazard Mater, vol.177, pp.524-533, 2010.

K. Hammes, R. J. Smernik, J. O. Skjemstad, A. Herzog, U. F. Vogt et al., Synthesis and characterisation of laboratory-charred grass straw (Oryza sativa) and chestnut wood (Castanea sativa) as reference materials for black carbon quantification, Org Geochem, vol.37, pp.1629-1662, 2006.

S. W. Cheung and B. C. Anderson, Laboratory investigation of ethanol production from municipal primary wastewater solids, Bioresour Technol, vol.59, issue.96, pp.109-114, 1997.

G. Pokoo-aikins, A. Heath, R. A. Mentzer, M. Sam-mannan, W. J. Rogers et al., A multicriteria approach to screening alternatives for converting sewage sludge to biodiesel, J Loss Prev Process Ind, vol.23, pp.412-432, 2010.

J. Frederickson, K. R. Butt, R. M. Morris, and C. Daniel, Combining vermiculture with traditional green waste composting systems, 5th Int Symp Earthworm Ecol, vol.29, 1997.

A. A. Zorpas, E. Kapetanios, G. A. Zorpas, P. Karlis, A. Vlyssides et al., Compost produced from organic fraction of municipal solid waste, primary stabilized sewage sludge and natural zeolite, J Hazard Mater, vol.77, pp.233-241, 2000.

R. Cresson, H. Carrère, J. P. Delgenès, and N. Bernet, Biofilm formation during the start-up period of an anaerobic biofilm reactor-Impact of nutrient complementation, Biochem Eng J, vol.30, pp.55-62, 2006.

J. Godon, Aspects biochimiques et microbiologiques de la méthanisation, Moletta R Méthanisation, pp.61-85, 2008.

S. García-gen, J. M. Lema, and J. Rodríguez, Generalised modelling approach for anaerobic codigestion of fermentable substrates, Bioresour Technol, vol.147, pp.525-558, 2013.

S. R. Harper and F. G. Pholand, Recent Developments in Hydrogen Management During Anaerobic Biological Wastewater Treatment, Biotechnol Bioeng, vol.XXVIII, pp.585-602, 1986.

A. Rotaru, P. M. Shrestha, F. Liu, M. Shrestha, D. Shrestha et al., A new model for electron flow during anaerobic digestion: direct interspecies electron transfer to Methanosaeta for the reduction of carbon dioxide to methane, Energy Env Sci, vol.7, pp.408-423, 2014.

C. Sperling-m-von and L. Ca-de, Biological wastewater treatment in warm climate regions, vol.1, 2005.

J. Sun, Isolation and characterization of cellulose from sugarcane bagasse, Polym Degrad Stab, vol.84, pp.331-340, 2004.

M. Åkerholm, B. Hinterstoisser, and L. Salmén, Characterization of the crystalline structure of cellulose using static and dynamic FT-IR spectroscopy, Carbohydr Res, vol.339, pp.569-78, 2004.

K. Hanaki, T. Matsuo, and M. Nagase, Mechanism of inhibition caused by long-chain fatty acids in anaerobic digestion process, Biotechnol Bioeng, vol.23, pp.1591-1610, 1981.

G. Lyberatos and I. V. Skiadas, Modelling of anaerobic digestion-a review, Glob Nest Int J, vol.1, pp.63-76, 1999.

, Biomethanization of the organic fraction of municipal solid wastes, 2003.

S. Hertel, P. Navarro, S. Deegener, and I. Körner, Biogas and nutrients from blackwater, lawn cuttings and grease trap residues-experiments for Hamburg's Jenfelder Au district, Energy Sustain Soc, vol.5, p.29, 2015.

S. Maunoir, Influence d'additifs minéraux sur la digestion anaérobie, Th Dr Univ Montp II, p.229, 1991.

A. Stams, F. De-bok, C. M. Plugge, M. Van-eekert, J. Dolfing et al., Exocellular electron transfer in anaerobic microbial communities, Environ Microbiol, vol.8, pp.371-82, 2006.

I. Siegert and C. Banks, The effect of volatile fatty acid additions on the anaerobic digestion of cellulose and glucose in batch reactors, Process Biochem, vol.40, pp.3412-3420, 2005.

V. Siriwongrungson, R. J. Zeng, and I. Angelidaki, Homoacetogenesis as the alternative pathway for H2 sink during thermophilic anaerobic degradation of butyrate under suppressed methanogenesis, Water Res, vol.41, pp.4204-4214, 2007.

S. Hattori, Syntrophic acetate-oxidizing microbes in methanogenic environments, Microbes Environ JSME, vol.23, pp.118-145, 2008.

Y. Chen, J. J. Cheng, and K. S. Creamer, Inhibition of anaerobic digestion process: A review, Bioresour Technol, vol.99, pp.4044-64, 2008.

N. Bernet and P. Buffière, Caractérisation de la mise en oeuvre de la méthanisation, p.552, 2011.

R. E. Speece, Anaerobic biotechnology for industrial wastewater treatment, Environ Sci Technol, vol.17, 1983.

R. Girault, Etude des cinétiques de dégradation anaérobie et des interactions entre substrats organiques : impact sur les filières de co-digestion, Rennes, vol.1, 2011.

D. Sasaki, T. Hori, S. Haruta, Y. Ueno, M. Ishii et al., Methanogenic pathway and community structure in a thermophilic anaerobic digestion process of organic solid waste, J Biosci Bioeng, vol.111, pp.41-47, 2011.

M. P. Bryant, L. L. Campbell, C. A. Reddy, and M. R. Crabill, Growth of Desulfovibrio in lactate or ethanol media low in sulfate in association with H2-utilizing methanogenic bacteria, Appl Environ Microbiol, vol.33, pp.1162-1169, 1977.

K. H. Hansen, I. Angelidaki, and B. K. Ahring, Anaerobic digestion of swine manure: inhibition by ammonia, Water Res, vol.32, pp.5-12, 1998.

S. Colleran and S. Pender, Mesophilic and thermophilic anaerobic digestion of sulphate-containing wastewaters, Water Sci Technol, vol.45, pp.231-236, 2002.

D. R. Lovley and E. J. Phillips, Competitive mechanisms for inhibition of sulfate reduction and methane production in the zone of ferric iron reduction in sediments, Appl Environ Microbiol, vol.53, pp.2636-2641, 1987.

O. Yenigün and B. Demirel, Ammonia inhibition in anaerobic digestion: A review, Process Biochem, vol.48, pp.901-912, 2013.

M. J. Mcinerney and M. P. Bryant, Basic Principles of Bioconversions in Anaerobic Digestion and Methanogenesis, Biomass Convers. Process. Energy Fuels, pp.277-96, 1981.

J. B. Van-lier, K. C. Grolle, C. T. Frijters, A. J. Stams, and G. Lettinga, Effects of acetate, propionate, and butyrate on the thermophilic anaerobic degradation of propionate by methanogenic sludge and defined cultures, Appl Environ Microbiol, vol.59, pp.1003-1011, 1993.

M. J. Taherzadeh and K. Karimi, Pretreatment of Lignocellulosic Wastes to Improve Ethanol and Biogas Production: A Review, Int J Mol Sci, vol.9, pp.1621-51, 2008.

Y. Yoon, S. Kim, K. Shin, and C. Kim, Effects of Substrate to Inoculum Ratio on the Biochemical Methane Potential of Piggery Slaughterhouse Wastes, Asian-Australas J Anim Sci, vol.27, pp.600-607, 2014.

A. Khalid, M. Arshad, M. Anjum, T. Mahmood, and L. Dawson, The anaerobic digestion of solid organic waste, Waste Manag, vol.31, 2011.

O. N. A?da? and D. T. Sponza, Co-digestion of mixed industrial sludge with municipal solid wastes in anaerobic simulated landfilling bioreactors, J Hazard Mater, vol.140, pp.75-85, 2007.

H. M. Lo, T. A. Kurniawan, M. Sillanpää, T. Y. Pai, C. F. Chiang et al., Modeling biogas production from organic fraction of MSW co-digested with MSWI ashes in anaerobic bioreactors, Bioresour Technol, vol.101, pp.6329-6364, 2010.

E. Comino, M. Rosso, and V. Riggio, Development of a pilot scale anaerobic digester for biogas production from cow manure and whey mix, Bioresour Technol, vol.100, pp.5072-5080, 2009.

R. Girault, P. Peu, F. Béline, T. Lendormi, and S. Guillaume, Caractéristiques des substrats et interactions dans les filières de co-digestion: cas particulier des co-substrats d'origine agroindustrielle, Sci Eaux Territ, vol.2013, pp.44-53

A. J. Stams, K. C. Grolle, C. T. Frijters, and J. B. Van-lier, Enrichment of thermophilic propionate-oxidizing bacteria in syntrophy with Methanobacterium thermoautotrophicum or Methanobacterium thermoformicicum, Appl Environ Microbiol, vol.58, pp.346-352, 1992.

D. P. Smith and P. L. Mccarty, Energetic and rate effects on methanogenesis of ethanol and propionate in perturbed CSTRs, Biotechnol Bioeng, vol.34, pp.39-54, 1989.

M. P. Bryant, E. A. Wolin, M. J. Wolin, and R. S. Wolfe, Methanobacillus omelianskii, a symbiotic association of two species of bacteria, Arch Für Mikrobiol, vol.59, pp.20-31, 1967.

K. Decker, K. Jungermann, and R. K. Thauer, Energy production in anaerobic organisms, Angew Chem Int Ed Engl, vol.9, pp.138-158, 1970.

R. K. Thauer, K. Jungermann, and K. Decker, Energy Conservation in Chemotrophic Anaerobic Bacteria, Am Soc Microbiol, pp.100-80, 1977.

Z. Isa, S. Grusenmeyer, and W. Verstraete, Sulfate reduction relative to methane production in highrate anaerobic digestion: microbiological aspects, Appl Environ Microbiol, vol.51, pp.580-587, 1986.

H. D. Klüber and R. Conrad, Effects of nitrate, nitrite, NO and N2O on methanogenesis and other redox processes in anoxic rice field soil, FEMS Microbiol Ecol, vol.25, pp.301-319, 1998.

A. Noyola, Technologies de traitement des effluents urbains dans les pays chauds. Méthanisation 2e Ed, p.552, 2011.

A. Noyola, A. Padilla-rivera, J. M. Morgan-sagastume, L. P. Güereca, and F. Hernández-padilla, Typology of Municipal Wastewater Treatment Technologies in Latin America, CLEAN -Soil Air Water, vol.40, pp.926-958, 2012.

W. Qiao, X. Yan, J. Ye, Y. Sun, W. Wang et al., Evaluation of biogas production from different biomass wastes with/without hydrothermal pretreatment, Renew Energy, vol.36, pp.3313-3321, 2011.

V. O'flaherty, T. Mahony, O. Kennedy, R. Colleran, and E. , Effect of pH on growth kinetics and sulphide toxicity thresholds of a range of methanogenic, syntrophic and sulphate-reducing bacteria, Process Biochem, vol.33, pp.555-69, 1998.

L. M. Palmowski and J. A. Müller, Influence of the size reduction of organic waste on their anaerobic digestion, Water Sci Technol, vol.41, pp.155-62, 2000.

P. A. Alphenaar, A. Visser, G. Lettinga, . The, . Of et al., Bioresour Technol, pp.249-58, 1993.

J. K. Kim, B. R. Oh, Y. N. Chun, and S. W. Kim, Effects of temperature and hydraulic retention time on anaerobic digestion of food waste, J Biosci Bioeng, vol.102, pp.328-360, 2006.

D. Bolzonella, P. Pavan, P. Battistoni, and F. Cecchi, Mesophilic anaerobic digestion of waste activated sludge: influence of the solid retention time in the wastewater treatment process, Process Biochem, vol.40, pp.1453-60, 2005.

M. Hernández, Hydrogen production from anaerobic co-digestion of coffe mucilage and swine manure, 2012.

M. Y. Nurliyana, . Ps, H. Rasmina, M. Kalsom, K. L. Chin et al., Effect of C/N ratio in methane productivity and biodegradability during facultative co-digestion of palm oil mill effluent and empty fruit bunch, Ind Crops Prod, vol.76, pp.409-424, 2015.

G. F. Parkin and W. F. Owen, Fundamentals of Anaerobic Digestion of Wastewater Sludges, J Environ Eng, vol.112, pp.867-920, 1986.

S. Sung and T. Liu, Ammonia inhibition on thermophilic anaerobic digestion, Chemosphere, vol.53, pp.43-52, 2003.

Y. Bareha, R. Girault, J. Jimenez, and A. Trémier, Characterization and prediction of organic nitrogen biodegradability during anaerobic digestion: A bioaccessibility approach, Bioresour Technol, vol.263, pp.425-461, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01829450

B. Calli, B. Mertoglu, B. Inanc, and O. Yenigun, Effects of high free ammonia concentrations on the performances of anaerobic bioreactors, Process Biochem, vol.40, pp.1285-92, 2005.

M. Jetten, M. Wagner, J. Fuerst, G. Loosdrecht-m-van,-kuenen, and M. Strous, Microbiology and application of the anaerobic ammonium oxidation ('anammox') process, Curr Opin Biotechnol, vol.12, pp.211-212, 2001.

?. Lij, S. Malamis, S. Gonz?lez-garc?a, F. Fatone, M. T. Moreira et al., Technical and environmental evaluation of an integrated scheme for the co-treatment of wastewater and domestic organic waste in small communities, Water Res, vol.109, pp.173-85, 2017.

V. Vigneron, Voies de réduction des oxydes d'azote lors de leur injection dans un massif de déchets ménagers et assimilés, 2005.

R. Moletta, G. Antonini, and N. Bernet, Gestion des problèmes environnementaux dans les industries agroalimentaires. Paris: Editions TEC & DOC, 2006.

C. Huiliñir, E. Aspé, and M. Roeckel, Modeling of the denitrification/anaerobic digestion process of salmon fishery wastewater in a biofilm tubular reactor, J Environ Manage, vol.92, pp.1591-608, 2011.

J. C. Akunna, C. Bizeau, and R. Moletta, Denitrification in anaerobic digesters: Possibilities and influence of wastewater COD/N-NO X ratio, Environ Technol, vol.13, pp.825-861, 1992.

G. Percheron, N. Bernet, and R. Moletta, Interactions between methanogenic and nitrate reducing bacteria during the anaerobic digestion of an industrial sulfate rich wastewater, FEMS Microbiol Ecol, vol.29, pp.341-350, 1999.

J. M. Tiedje, A. J. Sexstone, D. D. Myrold, and J. A. Robinson, Denitrification: ecological niches, competition and survival, Antonie Van Leeuwenhoek, vol.48, pp.569-583, 1983.

S. Sakaki, Étude de la production des acides gras volatils à partir de la fermentation acidogène des boues d'épuration des effluents issus d'une usine de pâtes et papiers. Institut national de la recherche scientifique, 2014.

Q. Wang, M. Kuninobu, H. I. Ogawa, and Y. Kato, Degradation of volatile fatty acids in highly e?cient anaerobic digestion, Biomass Bioenergy, p.10, 1999.

M. Öztürk, Conversion of acetate, propionate and butyrate to methane under thermophilic conditions in batch reactors, Water Res, vol.25, pp.1509-1522, 1991.

L. Gorris, J. Van-deursen, C. Van-der-drift, and G. D. Vogels, Inhibition of propionate degradation by acetate in methanogenic fluidized bed reactors, Biotechnol Lett, vol.11, pp.61-67, 1989.

A. J. Mawson, R. L. Earle, and V. F. Larsen, Degradation of acetic and propionic acids in the methane fermentation, Water Res, vol.25, pp.1549-54, 1991.

E. Choi and J. M. Rim, Competition and Inhibition of Sulfate Reducers and Methane Producers in Anaerobic Treatment, Water Sci Technol, vol.23, pp.1259-64, 1991.

P. P. Karhadkar, J. Audic, G. M. Faup, and P. Khanna, Sulfide and sulfate inhibition of methanogenesis, Water Res, vol.21, pp.90027-90030, 1987.

L. Zhang and D. Jahng, Enhanced anaerobic digestion of piggery wastewater by ammonia stripping: Effects of alkali types, J Hazard Mater, vol.182, pp.536-579, 2010.

A. Rinzema, J. Van-lier, and G. Lettinga, Sodium inhibition of acetoclastic methanogens in granular sludge from a UASB reactor, Enzyme Microb Technol, vol.10, issue.88, pp.90094-90098, 1988.

C. Fang, K. Boe, and I. Angelidaki, Anaerobic co-digestion of desugared molasses with cow manure; focusing on sodium and potassium inhibition, Bioresour Technol, vol.102, pp.1005-1016, 2011.

G. Feijoo, M. Soto, R. Mèndez, and J. M. Lema, Sodium inhibition in the anaerobic digestion process: Antagonism and adaptation phenomena, Enzyme Microb Technol, vol.17, pp.180-188, 1995.

H. I. Abdel-shafy and M. Mansour, Biogas production as affected by heavy metals in the anaerobic digestion of sludge, Egypt J Pet, vol.23, pp.409-426, 2014.

R. F. Hickey, J. Vanderwielen, and M. S. Switzenbaum, THE EFFECT OF HEAVY METALS ON METHANE PRODUCTION AND HYDROGEN AND CARBON MONOXIDE LEVELS DURING BATCH ANAEROBIC SLUDGE DIGESTION, Water Res, vol.23, pp.207-225, 1989.

C. Lin, Effect of heavy metals on acidogenesis in anaerobic digestion, Water Res, vol.27, pp.147-152, 1993.

J. A. Oleszkiewicz and V. K. Sharma, Stimulation and inhibition of anaerobic processes by heavy metals-a review, Biol Wastes, vol.31, pp.45-67, 1990.

H. Bouallagui, O. Haouari, Y. Touhami, B. Cheikh, R. Marouani et al., Effect of temperature on the performance of an anaerobic tubular reactor treating fruit and vegetable waste, Process Biochem, vol.39, pp.2143-2151, 2004.

M. Kim, Y. Ahn, and R. E. Speece, Comparative process stability and efficiency of anaerobic digestion; mesophilic vs. thermophilic, Water Res, vol.36, pp.4369-4385, 2002.

C. Liu, X. Yuan, G. Zeng, W. Li, and J. Li, Prediction of methane yield at optimum pH for anaerobic digestion of organic fraction of municipal solid waste, Bioresour Technol, vol.99, pp.882-890, 2008.

J. Lay and T. Noike, INFLUENCES OF pH AND MOISTURE CONTENT ON THE METHANE PRODUCTION IN HIGH-SOLIDS SLUDGE DIGESTION, Water Res, vol.31, pp.1518-1542, 1997.

H. Bouallagui, B. Rachdi, H. Gannoun, and M. Hamdi, Mesophilic and thermophilic anaerobic codigestion of abattoir wastewater and fruit and vegetable waste in anaerobic sequencing batch reactors, Biodegradation, vol.20, pp.401-410, 2009.

M. Kayhanian, Performance of a High-Solids Anaerobic Digestion Process Under Various Ammonia Concentrations, J Chem Technol Biotechnol, pp.349-52, 1994.

J. A. Siles, J. Brekelmans, M. A. Martín, A. F. Chica, and A. Martín, Impact of ammonia and sulphate concentration on thermophilic anaerobic digestion, Bioresour Technol, vol.101, pp.9040-9048, 2010.

H. Carrère, C. Dumas, A. Battimelli, D. J. Batstone, J. P. Delgenès et al., Pretreatment methods to improve sludge anaerobic degradability: A review, J Hazard Mater, vol.183, pp.1-15, 2010.

J. Mata-alvarez, S. Mace, and P. Llabrés, Anaerobic digestion of organic solid wastes. An overview of research achievements and perspectives, Bioresour Technol, vol.74, pp.3-16, 2000.

H. Hartmann, I. Angelidaki, B. K. Ahring, and . Er, Increase of anaerobic degradation of particulate organic matter in full-scale biogas plants by mechanical maceration, Water Sci Technol, vol.41, pp.145-153, 2000.

A. Tiehm, K. Nickel, and U. Neis, The use of ultrasound to accelerate the anaerobic digestion of sewage sludge, Water Sci Technol, vol.36, pp.121-128, 1997.

A. Valo, H. Carrère, and J. P. Delgenès, Thermal, chemical and thermo-chemical pre-treatment of waste activated sludge for anaerobic digestion: Pre-treatment of waste activated sludge, J Chem Technol Biotechnol, vol.79, pp.1197-203, 2004.

H. B. Nielsen, Z. Mladenovska, and B. K. Ahring, Bioaugmentation of a two-stage thermophilic (68°C/55°C) anaerobic digestion concept for improvement of the methane yield from cattle manure, Biotechnol Bioeng, vol.97, pp.1638-1681, 2007.

C. Bougrier, C. Albasi, J. P. Delgenès, and H. Carrère, Effect of ultrasonic, thermal and ozone pretreatments on waste activated sludge solubilisation and anaerobic biodegradability, Chem Eng Process Process Intensif, vol.45, pp.711-719, 2006.

E. Borges, C. Chernicharo, . Effect, . Thermal, . Of et al., Braz J Chem Eng, vol.26, pp.469-80, 2009.

Z. Mladenovska, H. Hartmann, T. Kvist, M. Sales-cruz, R. Gani et al., Thermal pretreatment of the solid fraction of manure: impact on the biogas reactor performance and microbial community, Water Sci Technol, vol.53, pp.59-67, 2006.

Y. Lin, D. Wang, S. Wu, and C. Wang, Alkali pretreatment enhances biogas production in the anaerobic digestion of pulp and paper sludge, J Hazard Mater, vol.170, pp.366-73, 2009.

H. Yi, Y. Han, and Y. Zhuo, Effect of Combined Pretreatment of Waste Activated Sludge for Anaerobic Digestion Process, Procedia Environ Sci, vol.18, pp.716-737, 2013.

R. Uma-rani, A. Kumar, S. Kaliappan, S. Yeom, I. et al., Low temperature thermochemical pretreatment of dairy waste activated sludge for anaerobic digestion process, Bioresour Technol, vol.103, pp.415-439, 2012.

N. Chamchoi, H. Garcia, and I. Angelidaki, Methane Potential of Household Waste : Batch Assays Determination, J Enviro Res, vol.33, pp.13-26, 2011.

L. Chu, S. Yan, X. Xing, X. Sun, and B. Jurcik, Progress and perspectives of sludge ozonation as a powerful pretreatment method for minimization of excess sludge production, Water Res, vol.43, pp.1811-1833, 2009.

I. T. Yeom, K. R. Lee, Y. H. Lee, K. H. Ahn, and S. H. Lee, Effects of ozone treatment on the biodegradability of sludge from municipal wastewater treatment plants, Water Sci Technol, vol.46, pp.421-426, 2002.

A. Cesaro and V. Belgiorno, Sonolysis and ozonation as pretreatment for anaerobic digestion of solid organic waste, Ultrason Sonochem, vol.20, pp.931-937, 2013.

F. Ometto, G. Quiroga, P. P?eni?ka, R. Whitton, B. Jefferson et al., Impacts of microalgae pretreatments for improved anaerobic digestion: Thermal treatment, thermal hydrolysis, ultrasound and enzymatic hydrolysis, Water Res, vol.65, pp.350-61, 2014.

G. Bochmann, T. Herfellner, F. Susanto, F. Kreuter, and G. Pesta, Application of enzymes in anaerobic digestion, Water Sci Technol, vol.56, pp.29-35, 2007.

E. Mobarak-qamsari, R. Kasra-kermanshahi, M. Nosrati, and T. Amani, Enzymatic pre-hydrolysis of high fat content dairy wastewater as a pretreatment for anaerobic digestion, Int J Environ Res, vol.6, pp.475-480, 2012.

P. Mallick, J. C. Akunna, and G. M. Walker, Anaerobic digestion of distillery spent wash: Influence of enzymatic pre-treatment of intact yeast cells, Bioresour Technol, vol.101, pp.1681-1686, 2010.

L. Masse, D. I. Massé, and K. J. Kennedy, Effect of hydrolysis pretreatment on fat degradation during anaerobic digestion of slaughterhouse wastewater, Process Biochem, vol.38, pp.1365-72, 2003.

. Afnor, Caractérisation et management des boues (AFNOR/P16P)

T. L. Hansen, C. Jansen, J. La, H. Spliid, Å. Davidsson et al., Composition of sourcesorted municipal organic waste collected in Danish cities, Waste Manag, vol.27, pp.510-518, 2007.

I. Angelidaki and B. K. Ahring, Methods for increasing the biogas potential from the recalcitrant organic matter contained in manure, Water Sci Technol, vol.41, pp.189-94, 2000.

M. Barjenbruch and O. Kopplow, Enzymatic, mechanical and thermal pre-treatment of surplus sludge, Adv Environ Res, vol.7, pp.715-720, 2003.

A. Cesaro, V. Naddeo, V. Amodio, and V. Belgiorno, Enhanced biogas production from anaerobic codigestion of solid waste by sonolysis, Ultrason Sonochem, vol.19, pp.596-600, 2012.

L. Torres, M. , E. Del, and C. , Effect of alkaline pretreatment on anaerobic digestion of solid wastes, Waste Manag, vol.28, pp.2229-2263, 2008.

G. Lettinga, S. Rebac, and G. Zeeman, Challenge of psychrophilic anaerobic wastewater treatment, Trends Biotechnol, vol.19, pp.363-70, 2001.

S. Mchugh, M. Carton, T. Mahony, O. Flaherty, and V. , Methanogenic population structure in a variety of anaerobic bioreactors, FEMS Microbiol Lett, vol.219, pp.55-62, 2003.

S. Rebac, J. Ruskova, S. Gerbens, J. B. Van-lier, A. Stams et al., High-rate anaerobic treatment of wastewater under psychrophilic conditions, J Ferment Bioeng, vol.80, pp.80926-80929, 1995.

K. J. Chae, A. Jang, S. K. Yim, and I. S. Kim, The effects of digestion temperature and temperature shock on the biogas yields from the mesophilic anaerobic digestion of swine manure, Bioresour Technol, vol.99, pp.1-6, 2008.

J. B. Van-lier, A. Tilche, B. K. Ahring, H. Macarie, R. Moletta et al., New perspectives in anaerobic digestion, Water Sci Technol, vol.43, pp.1-18, 2001.

H. O. Buhr and J. F. Andrews, The thermophilic anaerobic digestion process, Water Res, vol.11, pp.129-143, 1977.

P. N. Dugba and R. Zhang, Treatment of dairy wastewater with two-stage anaerobic sequencing batch reactor systems -thermophilic versus mesophilic operations, Bioresour Technol, vol.68, pp.225-258, 1999.

T. A. Elmitwalli, K. L. Oahn, G. Zeeman, and G. Lettinga, Treatment of domestic sewage in a two-step anaerobic filter/anaerobic hybrid system at low temperature, Water Res, vol.36, pp.2225-2232, 2002.

S. Connaughton, G. Collins, and V. Oflaherty, Psychrophilic and mesophilic anaerobic digestion of brewery effluent: A comparative study, Water Res, vol.40, pp.2503-2513, 2006.

C. Yirong, Thermophilic anaerobic digestion of food waste, 2014.

M. Macias-corral, Z. Samani, A. Hanson, G. Smith, P. Funk et al., Anaerobic digestion of municipal solid waste and agricultural waste and the effect of co-digestion with dairy cow manure, Bioresour Technol, vol.99, pp.8288-93, 2008.

H. Yen and D. Brune, Anaerobic co-digestion of algal sludge and waste paper to produce methane, Bioresour Technol, vol.98, pp.130-134, 2007.

F. J. Callaghan, D. Wase, K. Thayanithy, and C. F. Forster, Co-digestion of waste organic solids: batch studies, Bioresour Technol, vol.67, pp.117-139, 1999.

H. K. Ahn, M. C. Smith, S. L. Kondrad, and J. W. White, Evaluation of Biogas Production Potential by Dry Anaerobic Digestion of Switchgrass-Animal Manure Mixtures, Appl Biochem Biotechnol, vol.160, pp.965-75, 2010.

L. Luning, H. M-van-zundert, E. , J. Brinkmann, and A. , Comparison of dry and wet digestion for solid waste, vol.48, 2003.

J. Bollon, Etude des mécanismes physiques et de leur influence sur la cinétique de méthanisation en voie sèche: essais expérimentaux et modélisation, 2012.

S. Lu, S. W. Gibb, Y. Liu, W. Zhow, T. Imai et al., Comparison of start-up performances of dry anaerobic mesophilic and thermophilic digestions of organic solid wastes by enzymatic activity assessment, Proc. 10th World Congr. Anaerob. Can. Assoc. Water Qual. Montr, pp.1667-1671, 2004.

. Brummeler-e-ten, H. Horbach, and I. W. Koster, Dry anaerobic batch digestion of the organic fraction of municipal solid waste, J Chem Technol Biotechnol, vol.50, pp.191-209, 1991.

A. K. Jha, J. Li, L. Zhang, Q. Ban, and Y. Jin, Comparison between Wet and Dry Anaerobic Digestions of Cow Dung under Mesophilic and Thermophilic Conditions, Adv Water Resour Prot, vol.1, 2013.

A. J. Ward, P. J. Hobbs, P. J. Holliman, and D. L. Jones, Optimisation of the anaerobic digestion of agricultural resources, Bioresour Technol, vol.99, 2008.

J. Guendouz, P. Buffière, J. Cacho, M. Carrère, and J. Delgenes, Dry anaerobic digestion in batch mode: Design and operation of a laboratory-scale, completely mixed reactor, Waste Manag, vol.30, pp.1768-71, 2010.

J. Mata-alvarez, Biomethanization of the Organic Fraction of Municipal Solid Wastes, Water Intell Online, vol.4, 2005.

K. Braber, Anaerobic digestion of municipal solid waste: a modern waste disposal option on the verge of breakthrough, Biomass Bioenergy, vol.9, pp.365-376, 1995.

A. Schievano, G. Imporzano, L. Malagutti, E. Fragali, G. Ruboni et al., Evaluating inhibition conditions in high-solids anaerobic digestion of organic fraction of municipal solid waste, Bioresour Technol, vol.101, pp.5728-5760, 2010.

P. Llabrès-luengo and J. Mata-alvarez, The Hydrolytic Step in a Dry Digestion System, Biol Wastes, vol.23, pp.25-37, 1988.

H. M. Poggi-varaldo, L. Valdés, F. Esparza-garcia, and G. Fernández-villagómez, Solid substrate anaerobic co-digestion of paper mill sludge, biosolids, and municipal solid waste, Water Sci Technol, vol.35, pp.197-204, 1997.

G. B. Kasali and E. Senior, Effects of Temperature and Moisture on the Anaerobic Digestion of Refuse, J Chem Technol Biotechnol, vol.44, pp.31-41, 1989.

N. Nishio and Y. Nakashimada, Recent development of anaerobic digestion processes for energy recovery from wastes, J Biosci Bioeng, vol.103, pp.105-117, 2007.

A. Veeken and B. Hamelers, Effect of temperature on hydrolysis rates of selected biowaste components, Bioresour Technol, vol.69, pp.249-54, 1999.

C. J. Rivard, M. E. Himmel, T. B. Vinzant, W. S. Adney, C. E. Wyman et al., Anaerobic digestion of processed municipal solid waste using a novel high solids reactor: Maximum solids levels and mixing requirements, Biotechnol Lett, vol.12, pp.235-275, 1990.

K. Karim, R. Hoffmann, T. Klasson, K. , and A. Mh, Anaerobic digestion of animal waste: Effect of mode of mixing, Water Res, vol.39, pp.3597-606, 2005.

L. De-baere, Anaerobic digestion of solid waste: state-of-the-art, Water Sci Technol, vol.41, pp.283-90, 2000.

Y. Li, S. Y. Park, and J. Zhu, Solid-state anaerobic digestion for methane production from organic waste, Renew Sustain Energy Rev, vol.15, pp.821-827, 2011.

J. Moller, A. Boldrin, and T. H. Christensen, Anaerobic digestion and digestate use: accounting of greenhouse gases and global warming contribution, Waste Manag Res, vol.27, pp.813-837, 2009.

N. Nagao, N. Tajima, M. Kawai, C. Niwa, N. Kurosawa et al., Maximum organic loading rate for the single-stage wet anaerobic digestion of food waste, Bioresour Technol, vol.118, pp.210-218, 2012.

A. Donoso-bravo, J. Mailier, C. Martin, J. Rodríguez, C. A. Aceves-lara et al., Model selection, identification and validation in anaerobic digestion: A review, Water Res, vol.45, pp.5347-64, 2011.

A. Nizami and J. D. Murphy, What type of digester configurations should be employed to produce biomethane from grass silage?, Renew Sustain Energy Rev, vol.14, pp.1558-68, 2010.

A. C. Wilkie, Anaerobic digestion of dairy manure : Design and process considerations, Nat Resour Agric Engerineering Serv, pp.301-313, 2005.

K. V. Rajeshwari, M. Balakrishnan, A. Kansal, K. Lata, and V. Kishore, State-of-the-art of anaerobic digestion technology for industrial wastewater treatment, Renew Sustain Energy Rev, vol.4, pp.135-56, 2000.

S. J. Lim, Comparisons Between the UASB and the EGSB Reactor, 2011.

L. Seghezzo, G. Zeeman, J. B. Van-lier, H. Hamelers, and G. Lettinga, A review: The anaerobic treatment of sewage in UASB and EGSB reactors, Bioresour Technol, vol.65, pp.175-90, 1998.

D. Puyol, A. F. Mohedano, J. L. Sanz, and J. J. Rodríguez, Comparison of UASB and EGSB performance on the anaerobic biodegradation of 2,4-dichlorophenol, Chemosphere, vol.76, pp.1192-1200, 2009.

G. Schober, J. Schäfer, U. Schmid-staiger, and W. Trösch, One and two-stage digestion of solid organic waste, Water Res, vol.33, pp.854-60, 1999.

L. Zhang and D. Jahng, Long-term anaerobic digestion of food waste stabilized by trace elements, Waste Manag, vol.32, pp.1509-1524, 2012.

S. N. Misi and C. F. Forster, Semi-Continuous Anaerobic Co-Digestion of Agro-Wastes, Environ Technol, vol.23, pp.445-51, 2002.

V. Riau, M. Rubia, . La, and M. Pérez, Temperature-phased anaerobic digestion (TPAD) to obtain class A biosolids: A semi-continuous study, Bioresour Technol, vol.101, pp.2706-2718, 2010.

J. G. Usack, C. M. Spirito, and L. T. Angenent, Continuously-stirred Anaerobic Digester to Convert Organic Wastes into Biogas: System Setup and Basic Operation, p.3978, 2012.

Z. Valorisation, . Biogaz, . Institut, and . Polytechnique-de-lorraine, , 2011.

A. Seadi, T. Drosg, B. Fuchs, W. Rutz, D. Janssen et al., Biogas digestate quality and utilization, Biogas Handb, pp.267-301, 2013.

K. Hoyer, C. Hulteberg, M. Svensson, J. Jernberg, and Ø. Nørregård, Biogas upgrading -Technical Review, p.73, 2016.

F. Moisan, Energy climate visions 2030 / 2050: which ways of life for tomorrow?, 2014.

, Urbanization And Development : Emerging Futures, World Cities Report, 2016.

S. Kampelmann, Une analyse systémique de la gestion des matières organiques à, Bruxelles. Rev OFCE, vol.145, pp.161-84, 2016.

A. L. Reverdy, Anaerobic digestion of sewage sludge: overview of the French situation, Water Pract Technol, vol.8, pp.180-189, 2013.

, Sustainable biomass and bioenergy in the Netherlands, 2015.

H. Fraker and D. Emeritus, Why Urban Sustainability at Neighborhood Scales, p.45, 2013.

H. Fraker, The Hidden Potential of Sustainable Neighborhoods, 2013.

, Sustainable Communities, 2009.

A. Bringault, M. Eisermann, and S. Lacassagne, Vers des Villes 100 % énergies renouvelables et maîtrisant leur consommation Pistes de réflexion et d'action, 2016.

P. G. Berg and G. Nycander, Sustainable neighbourhoods-a qualitative model for resource management in communities, Landsc Urban Plan, vol.39, pp.117-135, 1997.

A. Van-timmeren, P. A. De-graaf, and G. De-vries, Spatial conditions for the integration of combined decentralised energy generation and waste (water) management in city districts, WIT Trans Ecol Environ, vol.84, 2005.

P. Kunkel, Environmental policy in Freiburg, 2011.

J. Hodge and J. Haltrecht, BedZED seven years on The impact of the UK's best known eco-village and its residents, 2009.

C. S. Smith and D. Butler, Water management at BedZED: some lessons, Proc Inst Civ Eng -Eng Sustain, vol.161, pp.113-135, 2008.

, Anaerobic Digestion : Local Energy ADventure Partnership n, LEAP, 2018.

. Air-languedoc-rousillon, . Unité, . Méthanisation, . Déchets, and . Amétyst, , 2015.

B. Métropole, Les déchets à Brest métropole, 2016.

F. Hofmann and S. Stolpp, Biogas in Germany Development, 2016.

E. Spijker, C. Jepma, K. Eisenack, and G. Brunekreeft, A level playing field for the European biogas and biomethane market. GROEN GAS -GRÜNES GAS, 2015.

V. International, The Freiburg plant n, 2018.

E. Münch, Overview of anaerobic treatment options for sustainable sanitation systems, BGR Symp, 2008.

J. C. Sievers, T. Wätzel, J. Londong, and E. Kraft, Case study: characterization of source-separated blackwater and greywater in the ecological housing estate Lübeck "Flintenbreite

, Environ Earth Sci, vol.75, 2016.

E. Münch, Ecological housing estate, 2009.

I. Kôrner and S. Hertel, Experiences from the Jenfelder Au neighbourhood in Hamburg to utilize regional bioresources for energy provision, 2014.

. Kreis and . Das-kreis-projekt, , 2012.

G. Rauschning, W. Berger, B. Ebeling, and A. Schöpe, Ecological Settlement in Allermöhe, 2009.

R. Dube, Waste to Energy -Nashik, India (Co-Fermentation of Kitchen Waste and Fecal Sludge), 2014.

M. Husain, F. I. Chavhan, and K. Navale, Anaerobic digestion of biodegradable organics in municipal solid wastes in Nashik city, Inte Rnational Res J Eng Technol IRJET, p.3, 2016.

M. S. Prabhu and S. Mutnuri, Anaerobic co-digestion of sewage sludge and food waste, Waste Manag Res, vol.34, pp.307-322, 2016.

H. N. Bhange, B. , R. C. Purohit, and P. , Energy Production through Co-fermentation of Organic Waste and Septage in Nashik City, India, Int J Curr Microbiol Appl Sci, vol.6, pp.2788-98, 2017.

J. M. Yadav, R. Dube, D. Walther, and R. K. Pawar, Waste to Energy through Cofermentation of Organic Waste and Septage in Nashik: A Close the Loop Cycle Approach, Dtsch Ges Für Int Zusammenarbeit GIZ GmbH New Delhi India n.d, vol.4, pp.369-375

, GIZ. Plant in Nashik, 2018.

H. Leal, L. Temmink, H. Zeeman, G. Buisman, and C. , Bioflocculation of grey water for improved energy recovery within decentralized sanitation concepts, Bioresour Technol, vol.101, pp.9065-70, 2010.

J. Rovers, B. Kroonen-backbier, and J. J. De-haan, Haal meer stikstof uit de bodem!: tips voor een optimaal stikstofgebruik op een aardbeibedrijf! Praktijkonderzoek Plant & Omgeving BV, 2006.

G. Zeeman, K. Kujawa, T. Mes, L. Hernandez, M. Graaff et al., Anaerobic treatment as a core technology for energy, nutrients and water recovery from source-separated domestic waste(water), Water Sci Technol, vol.57, 2008.

M. Dumont, Biogas Situation in the Netherlands, 2012.

A. Van-timmeren and M. Tawil, Integration of Living Machine and Biogas plant Case EVA Centre Lanxmeer, 2006.

W. Röling and A. Van-timmeren, Introducing urban agriculture related concepts in the built environment: The park f the 21st century, 2012.

A. Van-timmeren, M. Kaptein, D. Sidler, and . Workshop, The Sustainable City, vol.54, 2007.

A. Van-timmeren, D. Sidler, and M. Kaptein, Sustainable decentralized energy generation & sanitation: case EVA Lanxmeer, J Green Build, vol.2, pp.137-150, 2007.

A. Van-timmeren and L. C. Röling, Decentralised waste collection and separation in city districts and neighbourhoods, vol.67, 2003.

T. Klingstedt, D. Gustavsson, and J. La-cour-jansen, Modelling the COD Reducing Treatment Processes at Sjölunda WWTP, 2015.

. Sysav-biotec, From food waste to new resources Sysav's pre-treatment plant for food waste n

A. Israilava, Biofuels in Sweden: national verification system for sustainability, 2013.

, Swedish Gas Association. Biogas In Sweden. Energigas Sverige, 2011.

M. Backman and M. Rogulska, Arch Automot Eng -Arch Motoryz, 2016.

Å. Davidsson, J. La-cour-jansen, B. Appelqvist, C. Gruvberger, and M. Hallmer, Anaerobic digestion potential of urban organic waste: a case study in Malmö, Waste Manag Res, vol.25, pp.162-171, 2007.

J. Held, A. Mathiasson, and A. Nylander, Handbook for biogas valorisation in Swedish, 2008.

. Vasyd, . Sjölunda, and . Treatment-plant-n.d,

M. Bissmont, D. \aasa, and A. Schott, New collection system for food waste to biogas, Energiforsk Rep, vol.100, 2015.

G. Austin, Case study and sustainability assessment of Bo01, J Green Build, vol.8, pp.34-50, 2013.

S. Va, V. A. Sjolunda, and . Syd, , 2016.

C. Hellstedt, K. Starberg, L. Olsson, D. Hellström, L. Jonsson et al., Increased Biogas Production at the Henriksdal WWTP, 2009.

P. Iveroth, S. Vernay, A. Mulder, K. F. Brandt, and N. , Implications of systems integration at the urban level: the case of Hammarby Sjöstad, Stockholm. J Clean Prod, vol.48, pp.220-251, 2013.

J. Jernberg, S. Hedenskog, and C. Huang, An urban development case study of Hammarby Sjöstad in Sweden, 2015.

P. Ojala, . Profitability, . Of, and . Plants, , 2017.

. Greengasgrids, Biogas ur gödsel, avfall och restprodukter -goda svenska exempel, 2008.

J. Paing, A. Guilbert, V. Gagnon, and F. Chazarenc, Effect of climate, wastewater composition, loading rates, system age and design on performances of French vertical flow constructed wetlands: A survey based on 169 full scale systems. Spec Issue 5th, Int Symp Wetl Pollut Dyn Control, vol.80, pp.46-52, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01201691

G. Zeeman and G. Lettinga, The role of anaerobic digestion of domestic sewage in closing the water and nutrient cycle at community level, Water Sci Technol, vol.39, pp.187-94, 1999.

M. S. De-graaff, Resource recovery from black water, 2010.

D. Fabbri and C. Torri, Linking pyrolysis and anaerobic digestion (Py-AD) for the conversion of lignocellulosic biomass, Curr Opin Biotechnol, vol.38, pp.167-173, 2016.

F. Monlau, C. Sambusiti, N. Antoniou, A. Barakat, and A. Zabaniotou, A new concept for enhancing energy recovery from agricultural residues by coupling anaerobic digestion and pyrolysis process, Appl Energy, vol.148, pp.32-38, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01269002

H. Yang, R. Yan, H. Chen, D. H. Lee, and C. Zheng, Characteristics of hemicellulose, cellulose and lignin pyrolysis, Fuel, vol.86, pp.1781-1789, 2007.

M. N. Valilescu, C. Wendland, and M. Isacu, Towards Safe Water and Sanitation in Rural Localities: Appling the Water Safety Planning Methology in Manastiur, 2017.

G. Finnveden, Methodological aspects of life cycle assessment of integrated solid waste management systems, Resour Conserv Recycl, vol.26, pp.5-6, 1999.

G. Finnveden, J. Johansson, P. Lind, and Å. Moberg, Life cycle assessment of energy from solid waste-part 1: general methodology and results, J Clean Prod, vol.13, pp.213-242, 2005.

R. Clift, A. Doig, and G. Finnveden, The Application of Life Cycle Assessment to Integrated Solid Waste Management: Part 1-Methodology, Sustain Dev, vol.78, pp.279-87, 2000.

C. Zhao, Effect of Temperature on Biogas Production in Anaerobic Treatment of Domestic Wastewater UASB System in Hammarby Sjöstadsverk, 2011.

, Stockholm Vatten och Avfall. Modernisation of Henriksdal Wastewater Treatment Plant, 2016.

V. Cabbai, M. Ballico, E. Aneggi, and D. Goi, BMP tests of source selected OFMSW to evaluate anaerobic codigestion with sewage sludge, Waste Manag, vol.33, pp.1626-1658, 2013.

K. Möller and T. Müller, Effects of anaerobic digestion on digestate nutrient availability and crop growth: A review: Digestate nutrient availability, Eng Life Sci, vol.12, pp.242-57, 2012.

J. A. Alburquerque, C. De-la-fuente, M. Campoy, L. Carrasco, I. Nájera et al., Agricultural use of digestate for horticultural crop production and improvement of soil properties, Eur J Agron, vol.43, pp.119-147, 2012.

T. Rehl and J. Müller, Life cycle assessment of biogas digestate processing technologies, Resour Conserv Recycl, vol.56, pp.92-104, 2011.

N. Curry and P. Pillay, Biogas prediction and design of a food waste to energy system for the urban environment, Renew Energy, vol.41, pp.200-209, 2012.

I. V. Yentekakis and G. Goula, Biogas Management: Advanced Utilization for Production of Renewable Energy and Added-value Chemicals, Front Environ Sci, vol.5, 2017.

K. Warren, A techno-economic comparison of biogas upgrading technologies in Europe, 2012.

K. S. Woon and I. Lo, A proposed framework of food waste collection and recycling for renewable biogas fuel production in Hong Kong, Waste Manag, vol.47, pp.3-10, 2016.

W. Roling and A. V. Timmeren, Introducing urban agriculture related concepts in the built environment: the park of the 21st century, World Sustain. Build. Conf. Tokyo, pp.27-29, 2005.

. Oser and . Methamoly, , 2017.

E. Wortman and I. Kruseman, De zonneterp-een grootschalig zonproject. InnovatieNetwerk Groene Ruimte en Agrocluster Utrecht, 2005.

A. R. Mels, E. Andel-n-van,-wortmann, J. Kristinsson, P. Oei, and . Wilt-j-de, Greenhouse village, the greenhouse-powered, self-sufficient neighbourhood, Proc. Int. Conf. Asia-Eur, 2006.

M. Oteman, M. Wiering, and J. Helderman, The institutional space of community initiatives for renewable energy: a comparative case study of the Netherlands, Germany and Denmark. Energy Sustain Soc, vol.4, p.11, 2014.

K. S. Woon, I. Lo, S. Chiu, and D. Yan, Environmental assessment of food waste valorization in producing biogas for various types of energy use based on LCA approach, Waste Manag, vol.50, pp.290-299, 2016.

. Ademe, Visions Energie Climat 2030/2050 Quels modes de vie pour demain ?, 2014.

. Ademe, Mix de gaz 100 % renouvelable en 2050 ? ADEME, 2018.

A. B. Bisinella-de-faria, M. Spérandio, A. Ahmadi, and L. Tiruta-barna, Evaluation of new alternatives in wastewater treatment plants based on dynamic modelling and life cycle assessment (DM-LCA), Water Res, vol.84, pp.99-111, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01269415

E. Buonocore, S. Mellino, D. Angelis, G. Liu, G. Ulgiati et al., Life cycle assessment indicators of urban wastewater and sewage sludge treatment, Ecol Indic, 2016.

W. G. Mezzullo, M. C. Mcmanus, and G. P. Hammond, Life cycle assessment of a small-scale anaerobic digestion plant from cattle waste, Appl Energy, vol.102, pp.657-64, 2013.

B. Khoshnevisan, P. Tsapekos, M. Alvarado-morales, S. Rafiee, M. Tabatabaei et al., Life cycle assessment of different strategies for energy and nutrient recovery from source sorted organic fraction of household waste, J Clean Prod, vol.180, pp.360-74, 2018.

J. Todd and B. Josephson, The design of living technologies for waste treatment, Mesocosms Ecol Eng, vol.6, pp.109-145, 1996.

M. Scholz, Chapter 6 -Primary Treatment, Wetl. Water Pollut. Control Second Ed. Second Edition, pp.27-35, 2016.

W. E. Eleazer, W. S. Odle, Y. Wang, and M. A. Barlaz, Biodegradability of municipal solid waste components in laboratory-scale landfills, Environ Sci Technol, vol.31, pp.911-917, 1997.

H. Himanshu, J. D. Murphy, J. Grant, O. Kiely, and P. , Synergies from co-digesting grass or clover silages with cattle slurry in in vitro batch anaerobic digestion, Renew Energy, vol.127, pp.474-80, 2018.

S. Xie, J. P. Frost, P. G. Lawlor, G. Wu, and X. Zhan, Effects of thermo-chemical pre-treatment of grass silage on methane production by anaerobic digestion, Bioresour Technol, vol.102, pp.8748-55, 2011.

H. Fisgativa, M. Saoudi, and A. Tremier, Impact of an aerobic pre-treatment on the anaerobic biodegradability of food waste, 2016.

M. Tuomela, Biodegradation of lignin in a compost environment: a review, Bioresour Technol, vol.72, pp.169-83, 2000.

K. Liyama, B. A. Stone, and B. J. Macauley, Compositional Changes in Compost during Composting and Growth of Agaricus bisporus, APPL Env MICROBIOL, vol.60, p.9, 1994.

T. Thamsiriroj, A. S. Nizami, and J. D. Murphy, Why does mono-digestion of grass silage fail in long term operation?, Appl Energy, vol.95, pp.64-76, 2012.

I. Angelidaki, M. Alves, D. Bolzonella, L. Borzacconi, J. L. Campos et al., Defining the biomethane potential (BMP) of solid organic wastes and energy crops: a proposed protocol for batch assays, Water Sci Technol, vol.59, p.927, 2009.

Y. Fang, Y. Du, H. Feng, L. Hu, D. Shen et al., Sulfide oxidation and nitrate reduction for potential mitigation of H2S in landfills, Biodegradation, vol.26, pp.115-141, 2015.

J. Scholten, P. M. Bodegom, J. Vogelaar, A. Ittersum, K. Hordijk et al., Effect of sulfate and nitrate on acetate conversion by anaerobic microorganisms in a freshwater sediment, FEMS Microbiol Ecol, vol.42, pp.375-85, 2002.

M. Georgiopoulou and G. Lyberatos, Life Cycle Assessment of the Management of Municipal Solid Waste: A Case Study, p.20, 2017.

G. Capson-tojo, M. Rouez, M. Crest, E. Trably, J. Steyer et al., Kinetic study of dry anaerobic co-digestion of food waste and cardboard for methane production, Waste Manag, vol.69, pp.470-479, 2017.

J. Dequesne and E. Bréjoux, Observatoire des services publics d'eau et d'assainissement. Eaufrance, AFB, SISPEA, 2018.

P. Thiriet, T. Bioteau, A. Tremier, . Proposal-of-a-gis-method-for, . Designing et al., , p.1, 2018.

M. Pöschl, S. Ward, and P. Owende, Evaluation of energy efficiency of various biogas production and utilization pathways, Appl Energy, vol.87, pp.3305-3326, 2010.

M. Berglund and P. Börjesson, Assessment of energy performance in the life-cycle of biogas production, Biomass Bioenergy, vol.30, pp.254-66, 2006.

B. M. Smyth, J. D. Murphy, O. 'brien, and C. M. , What is the energy balance of grass biomethane in Ireland and other temperate northern European climates?, Renew Sustain Energy Rev, vol.13, pp.2349-60, 2009.

S. Astals, C. Venegas, M. Peces, J. Jofre, F. Lucena et al., Balancing hygienization and anaerobic digestion of raw sewage sludge, Water Res, vol.46, pp.6218-6245, 2012.

J. Ariunbaatar, A. Panico, G. Esposito, F. Pirozzi, and P. Lens, Pretreatment methods to enhance anaerobic digestion of organic solid waste, Appl Energy, vol.123, pp.143-56, 2014.

. Solagro, . La, . Anaérobie, and . Boues-urbaines, , 2001.

S. E. Nayono, J. Winter, and C. Gallert, Anaerobic digestion of pressed off leachate from the organic fraction of municipal solid waste, Waste Manag, vol.30, pp.1828-1861, 2010.

M. Gao, L. Zhang, A. P. Florentino, and Y. Liu, Performance of anaerobic treatment of blackwater collected from different toilet flushing systems: Can we achieve both energy recovery and water conservation?, J Hazard Mater, vol.365, pp.44-52, 2019.

D. Manns, J. Schermuly, K. Petersen, L. Körner, and I. , A Decentralised Management Scheme for Innovative Valorisation of Urban Biowaste. Decisive

, Afin de réaliser les mesures d'ATG-DSC, le protocole suivant a été employé

, Montée en température jusqu'à 250°C avec une vitesse de chauffage de 10°C/min

, Au début du chauffage, le débit d'azote est ramené à 20 ml/min et est maintenu ainsi jusqu'à la fin de l'expérimentation